paper

Quantum general covariance

arXiv:2304.09843 · doi:10.1088/1361-6382/aceb2b

Abstract

The structure of quantum interactions with fields of helicity two ("gravitons") is strongly constrained by three principles: positivity (Hilbert space), covariance, and locality of observables. To fulfil them simultaneously, some (non-observable) fields need to be non-local. We work with string-localized fields. The results then follow from the condition that entities closely related to observables, like the S-matrix, be local and string-independent. They in particular reproduce the interactions dictated by general covariance in classical field theory. Graviton-matter couplings are consistent only when the graviton self-interaction is taken into account as well.

36 pages. v2: 38 pages, Dirac coupling case included, otherwise as to appear in Class. Qu. Grav

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